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Molecular mechanism for silencing virally transduced genes involves histone deacetylation and chromatin condensation

机译:沉默病毒转导基因的分子机制涉及组蛋白脱乙酰化和染色质浓缩

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摘要

Virally transduced genes are often silenced after integration into the host genome. Chromatin immunoprecipitation and nuclease sensitivity experiments now demonstrate that silencing of the transgene is characterized by deacetylation of histone H4 lysines and chromatin condensation. Trichostatin A treatment results in dramatic reactivation of gene expression that is preceded by histone acetylation and chromatin decondensation. Analysis of individual histone H4 lysines demonstrate that chromatin domain opening is coincident with rapid acetylation of histone H4 K5, K12, and K16 and that maintenance of the open domain is correlated with acetylation of histone H4 K8. Removal of trichostatin A results in rapid deacetylation of histone H4 K8, chromatin condensation, and transcription silencing. The results suggest that deacetylation of histone H4 lysines and coincident chromatin condensation are critically involved in the silencing of virally transduced genes.
机译:病毒转导的基因整合入宿主基因组后通常被沉默。染色质免疫沉淀和核酸酶敏感性实验现在证明,转基因沉默的特征在于组蛋白H4赖氨酸的脱乙酰化和染色质缩合。曲古他汀A处理可导致基因表达急剧活化,然后再进行组蛋白乙酰化和染色质去缩合。单个组蛋白H4赖氨酸的分析表明,染色质结构域的开放与组蛋白H4 K5,K12和K16的快速乙酰化同时发生,并且开放域的维持与组蛋白H4 K8的乙酰化相关。去除曲古抑菌素A可导致组蛋白H4 K8快速脱乙酰化,染色质浓缩和转录沉默。结果表明,组蛋白H4赖氨酸的脱乙酰化和同时发生的染色质浓缩与病毒转导基因的沉默密切相关。

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